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首页> 外文期刊>Journal of Applied Phycology >Symbiotic association among marine microalgae and bacterial flora: a study with special reference to commercially important Isochrysis galbana culture
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Symbiotic association among marine microalgae and bacterial flora: a study with special reference to commercially important Isochrysis galbana culture

机译:海洋微藻和细菌菌群中的共生协会:特别参考商业上重要的isochrysis galbana培养

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摘要

Bacterial associations play a substantial role in large-scale culture and production systems of microalgae which are used in finfish and shellfish hatcheries as live feed and also as products such as algal paste, spray dried and freeze dried algal powders. The present study explores interaction between the marine microalga Isochrysis galbana MBTDCMFRI S002 and its associated bacteria. The algal-bacterial interaction was investigated by co-culturing axenic algal culture with two bacterial symbionts-Alteromonas sp. (MBTDCMFRI Mab 25) and Labrenzia sp. (MBTDCMFRI Mab 26). There was an increase in algal biomass accumulation and growth rate in the presence of added bacterial symbionts which indicates their algal growth promoting role. In addition, our study showed the potential of these bacterial strains to release various growth stimulatory compounds such as antioxidants, siderophores and indole-3-acetic acid which could have a significant positive impact on algal growth. The heterotrophic growth of these bacterial strains on extracellular carbon produced by I. galbana is evident in the present work. Thus, our findings showed that a mutually beneficial associations exists between I. galbana and coexisting bacterial flora which can be further explored to improve productivity and sustainability of aquaculture algal rearing systems.
机译:细菌关联在微藻和生产系统中发挥了重要作用,微藻和贝类孵化器用作活饲料,也作为藻类糊剂,喷雾干燥和冷冻干燥的藻类粉末等产品。本研究探讨了海洋微藻Isochrysis Galbana MBTDCMFRI S002及其相关细菌之间的相互作用。通过用两种细菌Symbionts-antoromonas sp共培养亚胺藻类培养来研究藻类细菌相互作用。 (MBTDCMFRI MAB 25)和Labrenzia SP。 (MBTDCMFRI MAB 26)。在添加的细菌共生存在下存在藻类生物量积累和生长速率,这表明其藻类生长促进作用。此外,我们的研究表明,这些细菌菌株的潜力释放各种生长刺激化合物,例如抗氧化剂,铁玻璃和吲哚-3-乙酸,这可能对藻类生长产生显着的积极影响。这些细菌菌株对I. Galbana产生的细胞外碳的异养生长在本作中是明显的。因此,我们的研究结果表明,在I. Galbana和共存细菌植物之间存在互利的联合,可以进一步探索,以提高水产养殖藻类饲养系统的生产率和可持续性。

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